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通过数值近似方法基于正电子发射断层扫描图像勾勒大体肿瘤体积。

Delineation gross tumor volume based on positron emission tomography images by a numerical approximation method.

作者信息

Chen Yangchun, Chen Xiangrong, Li Fanyong, Ji-An Liu

机构信息

Nuclear Medicine Department, Quanzhou First Hospital of Fujian Medical University, 248 East street, Licheng District, 362000, Quanzhou, China,

出版信息

Ann Nucl Med. 2014 Dec;28(10):980-5. doi: 10.1007/s12149-014-0894-x. Epub 2014 Aug 6.

Abstract

OBJECTIVE

A scheme, named SUV_Shape, for the gross tumor volume (GTV) delineation on positron emission tomography (PET) images was designed by a numerical approximation method, and evaluated during this study.

METHODS

Twenty-one vacuous plastic balls of different shapes and sizes, their volumes ranged from 0.56 to 179.50 mL and were confirmed by a BL610 balance (Sartorius, Canada), consisted of four group models. Every group model was filled with a specific activity [18F]-FDG solution (55.1, 38.2, 23.7, and 36.3 kBq/mL) represented tumor, and fixed at the bottom of a barrel which was filled with unlike [18F]-FDG solution (5.4, 6.8, 8.1, and 4.0 kBq/mL, correspondingly) represented the background. The PET data of them were acquired by two-dimensional and three-dimensional mode in a PET/CT scanner (Discovery ST8, GE Healthcare, USA). The volume of each ball was measured by SUV_Shape, and the BL610 balance, labeled as GTVs and GTVt, respectively. Five rabbits implanted VX2 squamous carcinomas were acquired by [18F]-FDG PET/CT. These rabbits were mercy killed within 24 h after PET/CT acquisition. VX2 tumors were surgically removed, and their volumes were measured by SUV_Shape, and caliper, labeled as GTVs and GTVt. The Spearman's ρ between GTVs and GTVt were done.

RESULTS

The tumor-background ratios in four groups of phantom models were 10.3, 5.6, 2.9, and 9.0, respectively. The relationship between GTVt and GTVs for phantom models was significant (Spearman's ρ > 0.95, P < 0.01), regardless of the different acquisition modes. Twelve VX2 tumor nodes or masses were measured; their GTVt ranged from 0.11 to 29.26 mL. The relationship between GTVt and GTVs was significant (Spearman's ρ = 0.893, P < 0.01) for animal tumor models.

CONCLUSIONS

The SUV_Shape scheme could delineate tumors based on their radiopharmaceutical-avid PET images.

摘要

目的

通过数值近似方法设计了一种名为SUV_Shape的用于在正电子发射断层扫描(PET)图像上勾画大体肿瘤体积(GTV)的方案,并在本研究中进行评估。

方法

21个不同形状和大小的空心塑料球,其体积范围为0.56至179.50 mL,由BL610天平(加拿大赛多利斯公司)确认,分为四组模型。每组模型填充有代表肿瘤的特定活度的[18F]-FDG溶液(55.1、38.2、23.7和36.3 kBq/mL),并固定在一个桶的底部,该桶中填充有代表背景的不同的[18F]-FDG溶液(分别为5.4、6.8、8.1和4.0 kBq/mL)。它们的PET数据通过PET/CT扫描仪(美国通用电气医疗集团的Discovery ST8)以二维和三维模式采集。每个球的体积通过SUV_Shape测量,以及BL610天平测量,分别标记为GTVs和GTVt。通过[18F]-FDG PET/CT获得5只植入VX2鳞状细胞癌的兔子。这些兔子在PET/CT采集后24小时内实施安乐死。手术切除VX2肿瘤,并通过SUV_Shape和卡尺测量其体积,分别标记为GTVs和GTVt。计算GTVs和GTVt之间的Spearman's ρ。

结果

四组体模模型中的肿瘤-背景比分别为10.3、5.6、2.9和9.0。无论采集模式如何,体模模型的GTVt和GTVs之间的关系均具有显著性(Spearman's ρ>0.95,P<0.01)。测量了12个VX2肿瘤结节或肿块;它们的GTVt范围为0.11至29.26 mL。对于动物肿瘤模型,GTVt和GTVs之间的关系具有显著性(Spearman's ρ=0.893,P<0.01)。

结论

SUV_Shape方案可根据放射性药物摄取的PET图像勾画肿瘤。

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